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PZT-Actuated and -Sensed Resonant Micromirrors with Large Scan Angles Applying Mechanical Leverage Amplification for Biaxial Scanning

机译:具有大扫描角度的PZT致动和感应谐振微镜,采用机械杠杆放大技术进行双轴扫描

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This article presents design, fabrication and characterization of lead zirconate titanate (PZT)-actuated micromirrors, which enable extremely large scan angle of up to 106???° and high frequency of 45 kHz simultaneously. Besides the high driving torque delivered by PZT actuators, mechanical leverage amplification has been applied for the micromirrors in this work to reach large displacements consuming low power. Additionally, fracture strength and failure behavior of poly-Si, which is the basic material of the micromirrors, have been studied to optimize the designs and prevent the device from breaking due to high mechanical stress. Since comparing to using biaxial micromirror, realization of biaxial scanning using two independent single-axial micromirrors shows considerable advantages, a setup combining two single-axial micromirrors for biaxial scanning and the results will also be presented in this work. Moreover, integrated piezoelectric position sensors are implemented within the micromirrors, based on which closed-loop control has been developed and studied.
机译:本文介绍了锆钛酸铅(PZT)致动的微镜的设计,制造和表征,该镜可实现高达106°的超大扫描角和45 kHz的高频。除了由PZT执行器提供的高驱动扭矩外,在这项工作中,机械杠杆放大技术已应用于微镜,以达到大位移,消耗低功率的目的。另外,已经研究了作为微镜的基本材料的多晶硅的断裂强度和破坏行为,以优化设计并防止器件由于高机械应力而损坏。由于与使用双轴微镜相比,使用两个独立的单轴微镜实现双轴扫描显示出相当大的优势,结合两个用于双轴扫描的单轴微镜的设置也将在此工作中给出结果。此外,在微镜中实现了集成式压电位置传感器,并在此基础上开发并研究了闭环控制。

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